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果蝇眼睛发育过程中糖基化的时空调控

Spatial and temporal regulation of glycosylation during Drosophila eye development.

作者信息

Yano Hiroyuki, Yamamoto-Hino Miki, Goto Satoshi

机构信息

Glycobiology and Glycotechnology Research Group, Mitsubishi Kagaku Institute of Life Sciences, 11 Minamiooya, Machida, Tokyo, 194-8511, Japan.

出版信息

Cell Tissue Res. 2009 Apr;336(1):137-47. doi: 10.1007/s00441-009-0753-6. Epub 2009 Feb 13.

DOI:10.1007/s00441-009-0753-6
PMID:19214580
Abstract

Glycosylation plays an essential role during development, in processes such as morphogen distribution, cell-to-cell communication, and extracellular matrix formation. Glycosylation is regulated during development in both a spatial and temporal manner. This study presents a detailed description of glycan distribution from late pupal to adult stages in Drosophila ommatidia by using nine different lectins. The lectins ConA, LCA, and DSA, which recognize high-mannose or complex types of N-linked glycans stain both apical and basolateral membranes of photoreceptor cells, whereas SBA, DBA, and ABA lectins, which bind to mucin-type O-glycans, label the inter-rhabdomeral space. The O-linked GlcNAc moiety is strongly labeled by WGA on the nuclear membrane. The localization of these glycans does not change throughout late pupal development. In contrast, the abundance of O-linked glycans, bisected oligosaccharides, and GlcNAc-containing glycans detected by PNA, PHA-E4, and WGA, respectively, is reduced in rhabdomeres and other subcellular domains during late pupal development. Some of these glycans have also been detected in the Golgi and/or putative secretory vesicles, suggesting their dynamic transport during development. These glycans, whose expression is dynamically regulated in a spatial and temporal manner, may therefore play critical roles in ommatidial development.

摘要

糖基化在发育过程中起着至关重要的作用,涉及形态发生素分布、细胞间通讯和细胞外基质形成等过程。糖基化在发育过程中受到时空调控。本研究通过使用九种不同的凝集素,详细描述了果蝇小眼从蛹后期到成虫阶段聚糖的分布情况。识别高甘露糖型或复杂型N-连接聚糖的凝集素ConA、LCA和DSA可对光感受器细胞的顶端和基底外侧膜进行染色,而与粘蛋白型O-连接聚糖结合的SBA、DBA和ABA凝集素则标记横纹间空间。O-连接的GlcNAc部分在核膜上被WGA强烈标记。这些聚糖的定位在整个蛹后期发育过程中没有变化。相比之下,在蛹后期发育过程中,分别由PNA、PHA-E4和WGA检测到的O-连接聚糖、平分寡糖和含GlcNAc聚糖在横纹肌和其他亚细胞结构域中的丰度降低。其中一些聚糖也在高尔基体和/或假定的分泌小泡中被检测到,表明它们在发育过程中进行动态运输。因此,这些在时空上动态调控表达的聚糖可能在小眼发育中起关键作用。

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